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畢業(yè)論文-年產(chǎn)170萬噸沈北原油的常壓塔設(shè)計(jì)-展示頁

2025-01-25 23:07本頁面
  

【正文】 浮閥的選取 ............................................................ 37 浮閥數(shù)及開孔率的計(jì)算 .................................................. 37 溢流堰及降液管的決定 ...................................................... 38 決定液體在塔板上的流動型式 ............................................ 38 決定溢流堰 ............................................................ 38 溢流堰高度及塔板上清夜層高度的決定 .................................... 38 液體在降液管的停留時間及流速 .......................................... 39 降液管底緣距塔板高度 .................................................. 39 水力學(xué)計(jì)算 ............................................................... 39 塔板壓力降 ............................................................ 39 霧沫夾帶 .............................................................. 39 泄漏 .................................................................. 39 淹塔情況 .............................................................. 40 降液管的負(fù)荷 .......................................................... 40 塔板的負(fù)荷性能圖 .......................................................... 40 霧沫夾帶線 ............................................................ 40 液泛線 ................................................................ 41 液相負(fù)荷上限線 ........................................................ 41 漏液線 ................................................................ 41 液相負(fù)荷下限線 ........................................................ 41 6 塔的內(nèi)部工藝結(jié)構(gòu) .............................................................. 43 板式塔的部工藝結(jié)構(gòu) ........................................................ 43 塔頂 .................................................................. 43 進(jìn)口 .................................................................. 43 抽出盤及出口 .......................................................... 44 人孔 .................................................................. 44 塔底 .................................................................. 44 塔裙 .................................................................. 45 封頭 ................................................................. 45 塔高 H ...................................................................... 45 遼寧石油化工大學(xué)繼續(xù)教育學(xué)院論文 IV 7 換熱過程 ...................................................................... 46 換熱方案的確定 ............................................................ 46 換熱的意義 ............................................................ 46 換熱方案 .............................................................. 46 換熱設(shè)備的選取和計(jì)算 ...................................................... 46 換熱設(shè)備的計(jì)算 ........................................................ 46 中段回流作為熱源 ...................................................... 48 重油作熱源 ............................................................ 48 冷后重油作為作熱源 .................................................... 49 柴油作為熱源 .......................................................... 49 塔頂冷凝器的計(jì)算 ...................................................... 50 中段回流冷卻 .......................................................... 50 71 ....................................... 51 熱源利用率計(jì)算 .............................................................. 51 熱源利用率計(jì)算: ...................................................... 51 原油提供熱量計(jì)算 ...................................................... 51 熱量利用率計(jì)算 ........................................................ 51 致 謝 ....................................................................... 52 符號表 .......................................................................... 53 參考文獻(xiàn) ........................................................................ 55 遼寧石油化工大學(xué)繼續(xù)教育學(xué)院論文 1 前 言 中國煉油工業(yè)迅速發(fā)展,據(jù)美國《油氣雜志》世界煉油特別報(bào)告統(tǒng)計(jì), 2022年中國原油年加工能力達(dá) 億噸,超過俄羅斯和日本,成為僅次于美國的世界煉油大國。s industrial production and economic operation can not be separated from oil, But as the product can not be directly used, Refining the process must go through processing, and even made a variety of quality in line with the requirements of the use of petroleum products, can be put into use. Atmospheric and vacuum distillation of crude oil as a crude oil processing technology, the total flow of crude oil processed in an important role, In the refinery plays a decisive role in its operation will have a direct impact on the followup of the important separation equipment atmospheric tower design is the availability of highyield, highquality oil in the recent years atmospheric and vacuum distillation technology and management experience continuous innovation, significant consumption of energysavmpared with fing devices, improving product quality. However, cooreign advanced level, there are still large gaps. To better enhance the production capacity of crude oil, in a small investment, low energy consumption and high efficiency of the thinking of the Daqing oil for atmospheric distillation basic design of the programme: design a section of vaporizationatmosphericdistillation unit,This device from a furnace official, a Taiwan atmospheric tower and a number of heat exchangers(Improve the heat transfer process should meet the requirements: the best use of waste heat。在某些特定的情況下也可以作催化裂化或加氫裂化裝置的原料。原油通過這樣的常壓蒸餾,一般可得到 350— 370℃以前的幾個餾分,可用作汽油、煤油(航空或燈用、)柴油等產(chǎn)品, 也可分別作為重整化工(如輕油裂解)等裝置的原料。)、冷凝冷卻器、機(jī)泵等組成,在常壓塔外側(cè)為側(cè)線產(chǎn)品設(shè)汽提塔。 為了更好地提高原油的生產(chǎn)能力,本著投資少,能耗低,效益高的思想對大慶原油進(jìn)行常壓蒸餾設(shè)計(jì)。近年來常減壓蒸餾技術(shù)和管理經(jīng)驗(yàn)不斷創(chuàng)新,裝置節(jié)能消耗顯著,產(chǎn)品質(zhì)量提高。 原油常減壓蒸餾作為原油的一次加工工藝,在原油加工總流程中占有重要作用,在煉廠具有舉足輕重的地位,其運(yùn)行的好壞直接影響到后續(xù)的加工過程。遼寧石油化工大學(xué)繼續(xù)教育學(xué)院論文 I 摘 要 本設(shè)計(jì)為年產(chǎn) 170萬噸 /年沈北 原油的常壓 塔 設(shè)計(jì)。 石油是現(xiàn)代工業(yè)的血液,我國的工業(yè)生產(chǎn)和經(jīng)濟(jì)運(yùn)行都離不開石油,但是又不能直接作為產(chǎn)品使用,必須經(jīng)過加工煉制過程,連制成多種在質(zhì)量上符合使用要求的石油產(chǎn)品,才能投入使用。其中重要的分離設(shè)備 — 常壓塔的設(shè)計(jì),是能否獲得高收率、高質(zhì)量油的關(guān)鍵。但與國 外先進(jìn)水平相比,仍存在較大的差距。設(shè)計(jì)的基本方案:設(shè)計(jì)了一個常壓一段汽化蒸餾裝置,此裝置由一臺管式加熱爐、一個常壓塔以及若干臺換熱器(完善的換熱流程應(yīng)達(dá)到要求:充分利用各種余熱;換熱器的換熱強(qiáng)度較大;原油流動壓力降較小。流程簡單,投資和操作費(fèi)用較少。蒸余的塔底重油可作鋼鐵或其它工業(yè)的燃料。 關(guān)鍵詞: 原油; 常壓設(shè)計(jì); 換熱; 常壓塔 遼寧石油化工大學(xué)繼續(xù)教育學(xué)院論文 I Abstr
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